A kind of magnetic fullerene nanomaterial and its application in solid phase extraction
A nanomaterial, fullerene technology, applied in other chemical processes, color/spectral characteristic measurement, ion exchange, etc., can solve the problem of not being able to maintain magnetism, and achieve the effect of easy elution and strong adsorption
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Embodiment 1
[0024] Take 200mL distilled water, add 0.2mmol C 60 Fullerene, 0.4mmol ferrous sulfate heptahydrate, 0.8mmol anhydrous ferric chloride, after feeding nitrogen and stirring for 15 minutes, heating to reflux temperature, keeping reflux for 20-30 minutes, cooling to 85-90°C, maintaining the temperature (85-90°C), add ammonia water (6mL) dropwise, continue to stir for 1-1.5h, the reaction solution is in a black turbid state, it naturally drops to room temperature, and after standing for 0.5h, it is adsorbed and separated by a magnet to obtain a black solid; After washing with distilled water for 3-5 times, vacuum-dry at 60°C for 12 hours to obtain a black solid powder, which is Magnetic C 60 Fullerene nanomaterials (abbreviated as C 60 -Fe 3 o 4 , figure 1 , hereinafter referred to as product A); the distilled water used in the present embodiment is the distilled water after ultrasonic.
Embodiment 2
[0026] Take 100mL distilled water, add 0.1mmol C 60Fullerene, 0.2mmol of ferrous sulfate heptahydrate, 0.4mmol of anhydrous ferric chloride, after argon gas stirring for 20 minutes, heating to reflux temperature, keeping reflux for 20-30 minutes, cooling to 85-90°C, maintaining Add ammonia water (5mL) dropwise at this temperature (85-90°C), continue to stir and react for 1-1.5h, the reaction solution is in a black and turbid state, it naturally drops to room temperature, and after standing for 0.5h, it is adsorbed and separated by a magnet to obtain a black solid; After washing with distilled water for 3-5 times, vacuum-dry at 60°C for 24 hours to obtain a black solid powder, which is Magnetic C 60 Fullerene nanomaterials (abbreviated as C 60 -Fe 3 o 4 , SEM image with figure 1 Consistent, hereinafter referred to as product B); The distilled water used in the present embodiment is the distilled water after ultrasonic.
Embodiment 3
[0028] Take 200mL distilled water, add 0.2mmol graphene, 0.4mmol ferrous sulfate heptahydrate, 0.8mmol anhydrous ferric chloride, stir for 15 minutes with nitrogen gas, heat to reflux temperature, keep reflux for 20-30 minutes, then cool down to 85 -90°C, maintain the temperature (85-90°C) and add ammonia water (6mL) dropwise, continue to stir for 1-1.5h, the reaction solution is black and turbid, naturally lowered to room temperature, after standing for 0.5h, use a magnet to separate , to obtain a black solid; after washing 3-5 times with distilled water, obtain a black solid powder at 60°C for 12h in vacuum, which is a magnetic graphene material (hereinafter referred to as product C); the distilled water used in the present embodiment is after ultrasonic distilled water.
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